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Population balance modeling and simulation of liquid-liquid-liquid phase transfer catalyzed synthesis of mandelic acid from benzaldehyde
被引:7
|作者:
Sowbna, P. R.
[1
]
Yadav, Ganapati D.
[1
]
Ramkrishna, Doraiswami
[2
]
机构:
[1] Inst Chem Technol ICT, Dept Chem Engn, Bombay 400019, Maharashtra, India
[2] Purdue Univ, Sch Chem Engn, W Lafayette, IN 47907 USA
关键词:
phase transfer catalysis (PTC);
liquid-liquid-liquid phase transfer catalysis (L-L PTC);
population balance;
mandelic acid;
Monte Carlo simulation;
interval of quiescence technique;
P-CHLORONITROBENZENE;
BENZYL-CHLORIDE;
SODIUM SULFIDE;
O-ALKYLATION;
TRI-LIQUID;
SELECTIVITY;
NOVELTIES;
RATES;
INTENSIFICATION;
REDUCTION;
D O I:
10.1002/aic.13780
中图分类号:
TQ [化学工业];
学科分类号:
0817 ;
摘要:
Mandelic acid has cosmetic, pharmaceutical, and antibacterial activities and is used in urinary antiseptic medicines. An attractive process for the production of mandelic acid is through reaction between benzaldehyde, sodium hydroxide, and chloroform in the presence of polyethylene glycol 4000 as a phase transfer catalyst. The liquidliquid phase transfer catalyzed (LL PTC) reaction can be intensified by converting it into three-liquid phases (LLL PTC). We address the modeling of a well-stirred reactor for the foregoing process, in which organic droplets surrounded by a thin film of catalyst-rich phase are suspended in the aqueous phase. A population balance model is formulated for the LLL PTC reaction and solved by Monte Carlo simulation using interval of quiescence technique. Transport processes and intrinsic reaction kinetics are extracted from the experiments. This population balance model serves to assess and interpret the relative roles of various processes in LLL PTC reaction, such as diffusive transport, reaction, and interaction between dispersed phase droplets. The model is expected to be an effective tool for reactor design and scale up. (C) 2012 American Institute of Chemical Engineers AIChE J, 2012
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页码:3799 / 3809
页数:11
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